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A single fluorescent chemosensor for multiple targets of Cu2+, Fe2+/3(+) and Al3+ in living cells and a near-perfect aqueous solution

机译:用于活细胞和接近完美水溶液中Cu2 +,Fe2 + / 3(+)和Al3 +多个目标的单一荧光化学传感器

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摘要

A sulfonate-based chemosensor 1 was designed and synthesized for sensing various analytes: Cu2+, Fe2+/3+ and Al3+. Sensor 1 showed a high selectivity and sensitivity for the analytes in a near-perfect aqueous medium. Cu2+ and Fe2+/(3+) could be monitored by fluorescence quenching of 1. It had sufficiently low detection limits (1.25 mu M for Cu2+ and 3.96 mu M for Fe3+), which were below the recommended levels of the World Health Organization for Cu2+ (31.5 mu M) and the Environmental Protection Agency for Fe3+ (5.37 mu M). 1 showed the high preferential selectivity for Cu2+ and Fe3+ in the presence of competitive metal ions without any interference. Importantly, pyrophosphate could be used to distinguish Fe3+ from Cu2+. In addition, this sensor could monitor Al3+ through fluorescence emission change. Moreover, 1 was successfully applied to quantify and image Al3+ in water samples and living cells. Based on photophysical studies and theoretical calculations, the sensing mechanisms of 1 for Cu2+ and Al3+ were explained, respectively.
机译:设计并合成了基于磺酸盐的化学传感器1,用于感测各种分析物:Cu2 +,Fe2 + / 3 +和Al3 +。传感器1对接近完美​​的水性介质中的分析物显示出很高的选择性和灵敏度。可以通过1的荧光猝灭来监测Cu2 +和Fe2 + /(3+)。其检出限足够低(Cu2 +为1.25μM,Fe3 +为3.96μM),低于世界卫生组织对Cu2 +的推荐水平。 (31.5微米)和环保局(Fe3 +)(5.37微米)。图1显示了在竞争金属离子存在下对Cu2 +和Fe3 +的高优先选择性,而没有任何干扰。重要的是,焦磷酸盐可用于区分Fe3 +和Cu2 +。另外,该传感器可以通过荧光发射变化监测Al3 +。此外,成功地将1用于定量和成像水样品和活细胞中的Al3 +。根据光物理研究和理论计算,分别解释了1对Cu2 +和Al3 +的感应机理。

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